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    • 1. 发明申请
    • Image Sensor with Buried Light Shield and Vertical Gate
    • 图像传感器与埋地屏蔽和垂直门
    • US20150035028A1
    • 2015-02-05
    • US13959362
    • 2013-08-05
    • Apple Inc.
    • Xiaofeng FanPhilip H. LiChung Chun WanAnup K. SharmaXiangli Li
    • H01L27/146
    • H01L27/14623H01L27/1462H01L27/14625H01L27/14638H01L27/1464H01L27/14685
    • A pixel in an image sensor can include a photodetector and a storage region disposed in one substrate, or a photodetector disposed in one substrate and a storage region in another substrate. A buried light shield is disposed between the photodetector and the storage region. A sense region, such as a floating diffusion, can be adjacent to the storage region, with the buried light shield disposed between the photodetector and the storage and sense regions. When the photodetector and the storage region are disposed in separate substrates, a vertical gate can be formed through the buried light shield and used to initiate the transfer of charge from the photodetector and the storage region. A transfer channel formed adjacent to, or around the vertical gate provides a channel for the charge to transfer from the photodetector to the storage region.
    • 图像传感器中的像素可以包括设置在一个基板中的光电检测器和存储区域,或者设置在一个基板中的光电检测器和另一个基板中的存储区域。 掩埋的光屏蔽设置在光电检测器和存储区之间。 诸如浮动扩散的感测区域可以与存储区域相邻,其中掩埋的光屏蔽件设置在光电检测器和存储和感测区域之间。 当光电检测器和存储区域设置在分离的基板中时,可以通过掩埋的光屏蔽形成垂直栅极,并且用于开始从光电检测器和存储区域传输电荷。 形成在垂直栅极附近或周围的转移通道提供用于电荷从光电检测器转移到存储区域的通道。
    • 10. 发明申请
    • FLICKER DETECTION USING SEMICONDUCTOR LIGHT SOURCE
    • 使用半导体光源进行闪光检测
    • US20160269656A1
    • 2016-09-15
    • US14827141
    • 2015-08-14
    • Apple Inc.
    • Douglas K. TaoAnup K. Sharma
    • H04N5/353H04N5/235
    • H04N5/3532H04N5/2256H04N5/2357
    • Devices and methods for adjusting an exposure window of a rolling shutter based on a frequency determined from ambient light gathered by a bimodal component are disclosed. Flickering light sources may cause artifacts in captured images, due to interplay between a period of a frequency of ambient light and the exposure window. An image capture device includes a semiconductor component configured to operate in two modes and an exposure window control component configured to compensate for the flickering based on a signal from the light source. In a sensor mode, the semiconductor component may operate to detect the frequency of ambient light. To avoid image artifacts, the frequency of the ambient light is analyzed and an exposure time is adjusted to an integer multiple of the period of the frequency such that exposure is matched to the periodic illumination of the flickering light source.
    • 公开了一种用于根据由双模组件聚集的环境光确定的频率来调节卷帘的曝光窗的装置和方法。 由于环境光的频率周期与曝光窗口之间的相互作用,闪烁的光源可能在捕获的图像中造成伪像。 图像捕获装置包括被配置为以两种模式操作的半导体部件和被配置为基于来自光源的信号来补偿闪烁的曝光窗控制部件。 在传感器模式中,半导体部件可以操作以检测环境光的频率。 为了避免图像伪影,分析环境光的频率,并且将曝光时间调整到频率周期的整数倍,使得曝光与闪烁光源的周期性照明相匹配。